topoisomerase inhibitors
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Molecules ◽  
2021 ◽  
Vol 26 (15) ◽  
pp. 4516
Author(s):  
Mateusz Maszczyk ◽  
Zuzanna Rzepka ◽  
Jakub Rok ◽  
Artur Beberok ◽  
Dorota Wrześniok

Despite many advances in therapy, glioblastoma (GB) is still characterized by its poor prognosis. The main reason for this is unsuccessful treatment, which slightly extends the duration of remission; thus, new regimens are needed. One of many types of chemotherapeutics that are being investigated in this field is topoisomerase inhibitors, mainly in combination therapy with other drugs. On the other hand, the search for new anti-cancer substances continues. Neobavaisoflavone (NBIF) is a natural compound isolated from Psoralea corylifolia L., which possesses anti-oxidant, anti-inflammatory, and anti-cancer properties. The aim of this study was to evaluate the effect of NBIF in human U-87 MG glioblastoma cells in comparison to normal human NHA astrocytes, and to examine if it influences the activity of irinotecan, etoposide, and doxorubicin in this in vitro model. We demonstrated that NBIF decreases U-87 MG cells viability in a dose-dependent manner. Furthermore, we found that it inhibits cell growth and causes glutathione (GSH) depletion more intensely in U-87 MG cells than in astrocytes. This study also provides, for the first time, evidence of the potentialization of the doxorubicin effect by NBIF, which was shown by the reduction in the viability in U-87 MG cells.


Antibiotics ◽  
2021 ◽  
Vol 10 (7) ◽  
pp. 862
Author(s):  
Anja Kolarič ◽  
Maja Kokot ◽  
Martina Hrast ◽  
Matjaž Weiss ◽  
Irena Zdovc ◽  
...  

Herein, we report the design of a focused library of novel bacterial topoisomerase inhibitors (NBTIs) based on innovative mainly monocyclic right-hand side fragments active against DNA gyrase and Topo IV. They exhibit a very potent and wide range of antibacterial activity, even against some of the most concerning hard-to-treat pathogens for which new antibacterials are urgently needed, as reported by the WHO and CDC. NBTIs enzyme activity and whole cell potency seems to depend on the fine-tuned lipophilicity/hydrophilicity ratio that governs the permeability of those compounds through the bacterial membranes. Lipophilicity of NBTIs is apparently optimal for passing through the membrane of Gram-positive bacteria, but the higher, although not excessive lipophilicity and suitable hydrophilicity seems to determine the passage through Gram-negative bacterial membranes. However, due to the considerable hERG inhibition, which is still at least two orders of magnitude away from MICs, continued optimization is required to realize their full potential.


2021 ◽  
Author(s):  
Kyle Orritt ◽  
Juliette Newell ◽  
Thomas Germe ◽  
Lauren Abbott ◽  
Holly Jackson ◽  
...  

2021 ◽  
Vol 6 (26) ◽  
pp. 6644-6651
Author(s):  
Manpreet Kaur ◽  
Vikrant Mehta ◽  
Sahil Arora ◽  
Anjana Munshi ◽  
Sandeep Singh ◽  
...  

2021 ◽  
Vol 12 (1) ◽  
Author(s):  
Anja Kolarič ◽  
Thomas Germe ◽  
Martina Hrast ◽  
Clare E. M. Stevenson ◽  
David M. Lawson ◽  
...  

AbstractNovel bacterial type II topoisomerase inhibitors (NBTIs) stabilize single-strand DNA cleavage breaks by DNA gyrase but their exact mechanism of action has remained hypothetical until now. We have designed a small library of NBTIs with an improved DNA gyrase-binding moiety resulting in low nanomolar inhibition and very potent antibacterial activity. They stabilize single-stranded cleavage complexes and, importantly, we have obtained the crystal structure where an NBTI binds gyrase–DNA in a single conformation lacking apparent static disorder. This directly proves the previously postulated NBTI mechanism of action and shows that they stabilize single-strand cleavage through asymmetric intercalation with a shift of the scissile phosphate. This crystal stucture shows that the chlorine forms a halogen bond with the backbone carbonyls of the two symmetry-related Ala68 residues. To the best of our knowledge, such a so-called symmetrical bifurcated halogen bond has not been identified in a biological system until now.


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